Nonlinear Nonlocal Cochlear Models, Multitones, Noises and Masking Thresholds

Abstract

An important part of voice signal processing is to perform a nonlinear operation along frequency on the short time spectrogram, while the nonlinear adaptation along time is better understood. We developed, computed and analyzed a class of nonlinear nonlocal cochlear models to approximate this nonlinear aspect. The model is mechanical in nature, and outputs the acoustic responses on the basilar membrane. In case of two or three tones, our results are in qualitative agreement with existing data. We prove that the model is well-posed in Sobolev spaces for all time, and admits exact multi-frequency solutions (quasi-periodic in time) if the nonlinearity is cubic and weak enough. We upscale the model output towards modeling psychoacoustic responses to help direct applications in signal processing based on first principles. For input of tone plus a banded noise, we calibrate the model with absolute masking thresholds (on noise only), then rely on model nonlinearity to capture tonal masking of noise and modified thresholds resulting from their interactions.

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Document Details

Document Type
Technical Report
Publication Date
Dec 30, 2002
Accession Number
ADA413900

Entities

People

  • Jack Xin

Organizations

  • University of Texas at Austin

Tags

Communities of Interest

  • C4I
  • Human Systems

DTIC Thesaurus Topics

  • Abstracts
  • Automated Speech Recognition
  • Banach Space
  • Boundaries
  • Computations
  • Displacement
  • Ear
  • Electrical Solitons
  • Frequency
  • Intensity
  • Kernel Functions
  • Mathematics
  • Military Research
  • Scientists
  • Sound Pressure
  • Steady State
  • Time Domain

Readers

  • Acoustics.
  • Atmospheric Science / Meteorology, specifically Wind Wave Turbulence.
  • Computational Modeling and Simulation

Technology Areas

  • Space
  • Space - Space Objects